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Timing, style, and significance of Cambrian through Laramide brittle reactivation along the Proterozoic Homestake shear zone, Colorado mineral belt

机译:科罗拉多矿物带元古生界霍斯特克切带沿拉曼酰胺脆性再活化的寒武纪时间,样式和意义

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摘要

Detailed mapping and stratigraphic studies at the intersection of the Proterozoic Homestake shear zone with the early Paleozoic section exposed on the margins of the Laramide Sawatch anticline in central Colorado provide limits on the timing and magnitude of brittle reactivation during Phanerozoic time. An episode of displacement rooted within two distinct ductile branches of the Homestake shear zone in the northeastern Sawatch Range generated an 8-km-wide, Late Cambrian fault block that had 4–20 m of paleotopographic relief prior to depositional onlap by sandstones of the Sawatch Formation. An episode of up-to-south displacement (<30 m) subsequently occurred along the southern part of the shear zone in the northeastern Sawatch Range and in the western Sawatch Range during deposition of the Lower Ordovician Manitou Formation. A third episode of reactivation during Early to Middle Ordovician time (post-Manitou Formation, pre-Harding Sandstone) resulted in renewed, decameter-scale uplift of the Late Cambrian fault block in the northeastern Sawatch Range. A fourth episode of reactivation during Late Cretaceous Laramide deformation produced localized strike-slip displacement along brittle faults on the northeastern flank of the Sawatch Range. The three early Paleozoic episodes of reactivation occurred on a cratonic platform and are genetically linked to extension and thermal uplift during intrustion of a suite of bimodal, rift-related plutonic rocks (Iron Hill and Wet Mountains intrusive rocks). They were emplaced 135 km south of the Homestake shear zone along the Cimarron-Red Rocks fault and Apishapa fault system. The reactivation history model proposed herein differs from some previous interpretations that cumulatively suggest at least eleven episodes of Phanerozoic reactivation, including relatively large-magnitude late Paleozoic displacement.
机译:详细的制图和地层学研究,位于拉拉德萨沃克背斜 科罗拉多州中部地区限制了生代时代脆性再活化的时间和幅度。源于东北Sawatch Range 东北部Homestake剪切带的两个不同延性分支 中的位移 产生了一个8公里宽的晚期寒武纪断块,在萨沃克组的 砂岩沉积上交之前,古地形起伏为4-20 m。随后在东北萨沃克山脉和 部分发生了一个南移 的事件(<30 m)。在下奥陶纪曼尼通组沉积期间,在萨瓦斯山脉西部。在奥陶纪早期至中段时期(马尼通组后, 前哈丁砂岩之前)第三次重新激活 导致了十米尺度的 Sawatch山脉东北部的晚寒武纪断块隆升。晚 白垩纪Laramide变形过程中的第四次重新活化沿萨瓦特山脉东北侧翼 上的脆性断层产生了局部走滑 位移。 重新活化的三个早期古生代发生在克拉通平台上,并且在 托付一套双峰的过程中,在遗传上与扩展和热隆升相关,与裂谷有关的深成岩(铁山和 湿山侵入岩)。它们被安置在沿Cimarron-Red Rocks断裂带和Apishapa断裂带系统沿Homestake剪切带向南135 km的位置。这里提出的重新激活历史模型与以前的解释不同,这些解释累积地 至少建议了11次生代古生代的激活, 包括相对较大的晚古生代。位移。

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  • 来源
    《Rocky Mountain Geology》 |2004年第2期|00000065-00000084|共20页
  • 作者

    Joseph L. Allen;

  • 作者单位

    Department of Geology and Physical Sciences, Concord University, Athens, WV 24712, U.S.A. email: allenj@concord.edu;

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  • 正文语种 eng
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